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MXD6 CF Reinforced Composites: Revolutionizing Industries

What are MXD6 CF Reinforced Composites?
MXD6 CF Reinforced Composites are a kind of outstanding composite material.
MXD6, as a high-performance nylon resin, has excellent barrier properties and certain mechanical strength by itself. When it is combined with carbon fibers, the formed MXD6 CF Reinforced Composites have more prominent advantages.

This composite material has extremely high tensile strength and stiffness, and can withstand large loads. At the same time, it has excellent heat resistance and chemical corrosion resistance, and can maintain stable performance in harsh environments. This enables it to be used for key components in automotive manufacturing, to contribute to the lightweighting of aircraft structures in the aerospace field, and to be used for components with high requirements in the electronics industry. The application prospects are very broad.

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Product By Features

PA CF Compounds PA-CF-BCA as Shoe Materials
PA CF Compounds PA-CF-BCA as Shoe Materials

PA CF is widely used in the footwear industry due to its high strength, lightweight, wear resistance, and elasticity, particularly in high-performance sports shoes and functional footwear.

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Conductive PAMXD6 CF30 Plastic Raw Materials for Automobile Sensor Housing
Conductive PAMXD6 CF30 Plastic Raw Materials fo...

Conductive PAMXD6 CF30 is a carbon fiber-reinforced polyamide composite offering high electrical conductivity (10²–10⁵ Ω/sq), exceptional strength (>200 MPa), heat resistance (>200°C), low moisture absorption (<1%), chemical resistance, and lightweight wear resistance.

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High stress applications MXD6-CF60
High stress applications MXD6-CF60

MXD6-CF60 is a high-performance polyamide composite reinforced with 60% carbon fiber, providing maximum strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~360°C, very low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and extreme engineering applications. Suitable for injection molding and…

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MXD6-CF50 high stress applications
MXD6-CF50 high stress applications

MXD6-CF50 is a high performance polyamide composite reinforced with 50% carbon fiber, delivering maximum strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~340°C, very low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and extreme engineering applications. Suitable for injection molding…

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High-strength MXD6-CF40
High-strength MXD6-CF40

MXD6-CF40 is a high performance polyamide composite reinforced with 40% carbon fiber, offering maximum strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~320°C, very low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and extreme engineering applications. Suitable for injection molding…

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MXD6-CF30 for molding
MXD6-CF30 for molding

MXD6-CF30 is a high performance polyamide composite reinforced with 30% carbon fiber, delivering exceptional strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~300°C, very low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and high-performance engineering applications. Suitable for injection molding…

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Composites for medical devices MXD6-CF20
Composites for medical devices MXD6-CF20

MXD6-CF20 is a high performance polyamide composite reinforced with 20% carbon fiber, offering exceptional strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~280°C, very low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and high-performance engineering applications. Suitable for injection molding…

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MXD6-CF10 composites for medical devices
MXD6-CF10 composites for medical devices

MXD6-CF10 is a high-performance polyamide composite reinforced with 10% carbon fiber, offering enhanced strength, stiffness, wear resistance, and thermal stability. With a heat deflection temperature of ~260°C, low moisture absorption, and excellent chemical resistance, it is ideal for automotive, industrial, and electronics applications. Suitable for injection molding and extrusion, it…

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Carbon fiber thermoplastic materials MXD6-CF5
Carbon fiber thermoplastic materials MXD6-CF5

MXD6-CF5 is a high performance polyamide composite reinforced with 5% carbon fiber, offering enhanced strength, stiffness, dimensional stability, and wear resistance. It features excellent thermal stability (HDT ~250°C), low moisture absorption, and superior chemical resistance, making it ideal for automotive, industrial, and electronics applications. Easily processable via injection molding and…

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High Strength PA MXD6 CF30 Raw Materials for Nuts
High Strength PA MXD6 CF30 Raw Materials for Nuts

PA MXD6 CF30 boasts high strength, heat resistance, low water absorption, stiffness, gas barrier, and chemical resistance, ideal for demanding applications.

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Heat-conducting Carbon Filled Nylon PA MXD6 CF Raw Materials
Heat-conducting Carbon Filled Nylon PA MXD6 CF ...

Carbon Filled Nylon PA MXD6 possess multiple features like high thermal conductivity, good mechanical properties, low water absorption and more, making it useful in various applications.

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Carbon Fiber Nylon MXD6 CF Plastic Material Pellets
Carbon Fiber Nylon MXD6 CF Plastic Material Pel...

Nylon MXD6 CF exhibits: enhanced mechanical strengths by carbon fiber addition, further improved heat resistance, reduced dimensional changes for good stability, and strengthened chemical resistance due to the combination.

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Product Feature Box

ECO FRIENDLY

LIGHT WEIGHT

ABRASION RESISTANCE

SCRATCH RESISTANCE

ANTI STATIC

HIGH STRENGTH

CONDUCTIVE MATERIALS

WEAR RESISTANCE

Company Advantage

Stringent Environmental Protection Standards

Carbon (Xiamen) New Material follows environmental regulations. It uses recyclable materials, low-VOC resins, and eco-friendly auxiliaries. It has treatment facilities and works on energy reduction, contributing to sustainability. Furthermore, it actively promotes environmental awareness among its employees and partners, and participates in environmental protection initiatives within the industry to make a positive impact on the environment.

Efficient Supply Chain Management

Carbon (Xiamen) New Material has a mature supply chain that ensures raw material supply and on-time product delivery. Close ties with global suppliers guarantee quality. Cooperation with logistics experts ensures fast transportation. Real-time tracking predicts and resolves issues. The company also maintains a buffer stock of critical raw materials to mitigate supply chain disruptions and has contingency plans in place to handle unforeseen circumstances promptly.

Professional R & D Team

Carbon (Xiamen) New Material has a team of experienced material scientists, engineers, and technical experts. They innovate and improve products. Material scientists enhance interfaces, engineers optimize designs, and experts use tech for monitoring and efficiency. The team actively participates in industry conferences and workshops, fostering a culture of learning and knowledge sharing, which leads to continuous improvement in product development and process optimization.

Cost Advantage

Through process optimization, strategic raw material purchasing, and large-scale production, Carbon (Xiamen) New Material reduces costs. Lean production reduces waste. Long-term supplier partnerships get better prices. Automation lowers labor costs, enhancing price competitiveness. Additionally, it implements effective cost management strategies and continuously evaluates its cost structure to identify further savings opportunities without sacrificing product quality or customer service.

Export Qualifications and Certifications

Carbon (Xiamen) New Material has export qualifications and international certifications like ISO 9001 and AS9100. These boost product recognition and competitiveness, opening doors to high-end markets and various industries. It is constantly working towards obtaining additional certifications and adhering to the latest industry standards to expand its market presence and meet the evolving demands of global customers.

"The MXD6 CF Reinforced Composites we imported have been a game-changer for our production line. The quality is exceptional, and it has significantly improved the durability and performance of our products. Highly recommended!"

Lysander Miller

"We are extremely satisfied with the MXD6 CF Reinforced Composites. The delivery was prompt, and the customer service was excellent. It's been a pleasure doing business with the supplier."

Caius from USA

"The MXD6 CF Reinforced Composites are decent, but the price could be more competitive. The performance is good, but we hope for some improvement in cost-effectiveness."

Phineas Wilson

"The MXD6 CF Reinforced Composites have exceeded our expectations in terms of strength and heat resistance. It's a top-quality material that has enhanced our product's competitiveness in the market."

Octavia Johnson

"We have been using MXD6 CF Reinforced Composites for a while now, and it has consistently delivered outstanding results. It's a reliable and high-performance material that we will continue to purchase."

Calliope Garcia from Canada

"While the MXD6 CF Reinforced Composites meet our basic requirements, there is still some room for improvement in terms of flexibility. However, it's still a usable material for our purposes."

Persephone Taylor from Britain
Frequently Asked Questions

Carbon (Xiamen) New Material Co., Ltd. aims to provide buyers with "one-stop" worry-free high-quality services. Here you can find all information about carbon fiber engineering plastics. If you still have questions, please send us an email for consultation!

  • FAQ 1: What are the main features of MXD6 CF Reinforced Composites?

    Answer: MXD6 CF Reinforced Composites offer high tensile strength, excellent stiffness, superior heat resistance, and enhanced chemical resistance.

  • FAQ 2: How is MXD6 CF Reinforced Composites manufactured?

    Answer: It is typically produced through a process that involves combining MXD6 resin with carbon fibers under specific conditions and using advanced manufacturing techniques.

  • FAQ 3: In which industries are MXD6 CF Reinforced Composites commonly used?

    Answer: They are frequently employed in the automotive, aerospace, electronics, and defense industries.

  • FAQ 4: What are the benefits of using MXD6 CF Reinforced Composites over other materials?

    Answer: The benefits include lighter weight, higher performance, and better durability compared to many traditional materials.

  • FAQ 5: How does the cost of MXD6 CF Reinforced Composites compare to similar materials?

    Answer: It tends to be relatively higher due to the advanced materials and manufacturing processes involved, but its superior properties can justify the cost in many applications.

  • FAQ 6: Are MXD6 CF Reinforced Composites recyclable?

    Answer: While they can be recycled to some extent, the process is often complex and may not be as straightforward as for some other materials.

  • FAQ 7: What kind of maintenance is required for products made from MXD6 CF Reinforced Composites?

    Answer: Minimal maintenance is typically needed. Regular inspections for damage and proper cleaning are usually sufficient.

  • FAQ 8: Can MXD6 CF Reinforced Composites be customized for specific applications?

    Answer: Yes, they can be tailored to meet the specific requirements of different applications by adjusting the composition and manufacturing parameters.

  • FAQ 9: How do environmental factors affect the performance of MXD6 CF Reinforced Composites?

    Answer: Extreme temperatures, humidity, and exposure to certain chemicals can have an impact, but the composites are designed to withstand a wide range of environmental conditions.

  • FAQ 10: What are the latest developments in MXD6 CF Reinforced Composites technology?

    Answer: Ongoing research is focused on improving the mechanical properties, reducing costs, and enhancing the recyclability of these composites.

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